Fig. 46. Scheme of Rhynchospora alba ontogenesis [9], with modifications
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- Branden Abner Underwood
- 7 years ago
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1 *, 2 3, 4, 3 2 7, 3, 7, J Im V G 1 1-(2) (1) 2 (3) 2 (3) 1 (2) 1-2 (1) 2 (3) (1) 2 (3) 2,20±0,18 3,50±0,41 4,50±0,20 5,30±0,40 1,85±0,13 2,88±0,15 4,00±0,10 4,88±0,14 0,18±0,01 0,40±0,03 1,30±0,10 2,90±0,80 0,25±0,02 0,51±0,02 1,46±0,04 2,76±0, ,3±0, ,83±0, ,5±2, ,6±0,5 * :, ; : :3,, <, = J <, 0,8-1,5 3, : 3 > Im 3;:, 3 (:; 1 7 : :) V :? G :,, : ( ); 2-3 3?= ;: 3;: ; 3 <3 3 3;, : 3 3, : ; 3;: 3; G < (1) 2 (3-4) 7 B3 : ;? <3 3 SS G [9] Fig 46 Scheme of Rhynchospora alba ontogenesis [9], with modifications : 3 : J ( 2-3 : ; : 2-4 :) T 2, : ( ) : (: 30 33) Im (3-4 :) 3? 2 : (: : ), V (2-3 :) 3? 2 :, G 3 : : :@ 3 3, 3= G : :? 3 3, 7 U G,?: : = V??:? ; : 73 3, 7; S - : ;: : X: 7 :? 3 3 : T 89
2 : ( :3 7 ) 3: , : , : (= : 30 ) [9] Fig 47 Scheme of Dactylorhyza incarnata ontogenesis (by I Parnikoza) 2 : 3 3 : Y, 3? : J Im (3 ) J Z ,5 3 (1-3 (5-6) ), Im (; 2) 1-3 : V 2-3 :-7 (1-2 :, ; ) G1 3-4, (16) 7, 7 : 1 (2) : G2 5-7, (65) G3 3, , :? : 2-3 (6) ; 7 G : 3; : : 20 S? ( ; Im, 3? 3 (2) ); 1 (2-3) : [= : [ :? 3 ; 7 : 3:, : : 7? , : ( 3; 7 3 :) \ 3? 3 : : (J 1-4 :, Im 1-3, V G, :) Fig 48 Scheme of Dactylorhyza fuchsii ontogenesis (by I Parnikoza) X 3= : : 3? [ (3 >, 1975) 3 : : J #? 3-4 :, 7, 3 6, = 9-11 : [9] $%$ $ :?= : P 2 < - 3: J
3 (10-15 :) Im 3-6 : > V ; G, G1 <3 3, = 7, 4-5 : G2 :, (4) G3 : 1 7 SS :, Im S 2-4 J T3; 33 ( 3 ) < : = Fig 49 Scheme of Primula veris ontogenesis [10] with modifications ' B3? :?= : =< : (:) X: 3 ; = X : 7 2-3, ` : : ; : [45] 2 : 3-3 a: 7 < B : 3; 3?, : :=, 3 :3 B -% (Huperzia selago) : 5-7 ;? : ( : : 0,5 3 ) :? :, Sp ( ), : :, 3; : : [ : : 20 [3] > '$# (Lycopodiella inundata) 7 3,? 3 =?= >, 3 $$)#, '$#, +# (Diphaziastrum complanatum), 3 «:3», 7, 3 3; : 4 «7» :; ;, : 3?, : :: 7 3 : 3, 3; ' 2 : a: :3 2-3 :; 4 J: 2 : 1 ( : 2) (!"!#$% &'()*+%,*-"*" #/ #!0!+'// *1,0'2); Im 2 [ ; V 2-3 (: 4-5) ; G 3-5 ; S : [10] : **, 2 3, 4, 3 2 7, 3 b, J Im V G 1,0±0,1 2,0±0,3 2,0±0,4 3,2±0,6 1,2±0,05 1,5±0,06 2,0±0,06 3,2±0,1 1,40±0,30 4,40±0,29 6,70±1,20 6,20±0,40 3,77±0,11 4,61±0,14 4,64±0,32 4,71±0,16 0,30±0,02 0,5±0,06 1,10±0,20 1,21±0,12 0,62±0,02 1,08±0,03 1,43±0,08 1,73±0, ,2±0, ,3±0, ,0±2, ,5±0,3 91
4 ** :, ; Fig 50 Scheme of Coeloglossum viride ontogenesis [10] )$ [ 3 : 3 :3 [16] P :, 3 J : 1-2 : > : 7 :, ; c : 17,5 3 : 2 33 > [BX[_X`d _BB``c`T>ef`a c`by\` T[caB\` \T_BX[_Y[-gacY[_Yha,,Y[ [Yc`,_aY aa T_XX`a BY_2`` [Y Y_\[hi j>b`x[j[ c>\_ ` [2BXagX`\_ (T`B 51) Im : 1 3?=, ; : :, V G a : : 28,5 3, : 6 33 V 2 : : 15-32,2 3, 8 33, G = 7 (, 1? : T : 3? 1-3 7, G2 5-8 G2 : :7 : 7? Fig 51 Juvenile leaves of Galanthus nivalis (1), Scilla bifolia (2), and Gagea lutea (3) (by I Parnikoza) Fig 52 Scheme of Scilla bifolia ontogenesis (by I Parnikoza : ; 7 3, : : :? 3 3?: 3, : : : 7 Im, 3; Fig 53 Scheme of Scilla sibirica ontogenesis (by I Parnikoza) J Im V 2, 3 9,8 13,1 16,6 4, 3 0,2 0,6 0,7 :;, : > G :? G1 G2: 1-2, : 3 7 X : 92
5 3? 2 7 : 3; P : 2 : :3, 3, : 3-3,5 33, : 2 33 :?? ` : BaTi> [X [\ThY Ta2\`` [c[b\_` (,Y[ [Yc`,_aY aj[ [Y [,axn [i[g`i J 3 : 5,? [ 2 : : (T 55) Fig 54 Juvenile leaves of Pulsatilla spp (1) and Peocedanum sp (2) (by I Parnikoza) J 2-3 3, 3:, :3 3 : Im? : : c, : :3 3 33, : : 3 3 V :,? 6-9 G1 ( 7= ) 3? 1-2 G, c 3:3, :, : ( 3, := ) G ; : i (: : ) 7, : G3 3? :, 3 :? 3 :3? V, 7 :,?:? : S 3? Im 3 3 ; : [6] Fig 55 Scheme of Pulsatilla patens ontogenesis (by I Parnikoza) Ba4_XXhi [>cdb`di T[BYTac[ T_B\ThY[j[ ` c>j[[j[ [_2_eYBd j`t`2h, \[Y[Tha caj\[ [Yc`,`Yn [ c`bynd (T`B 56): Bca_ c`by[\ T_B\ThY[j[, BT c>j[[j[, baxyta j`t`2_ Fig 56 Leaves of Pulsatilla patens (1), P pratensis (3), and hybrid (2) (by I Parnikoza) #$ : ; [3],
6 :,? 3 V G 73 (T 58) : 3 [6] 3?: [3 3, : G2, = 3 3; : 3 :, : 7 : : [: 7, : G3 3 3 = 7? Fig 57 Scheme of Pulsatilla pratensis ontogenesis (by I Parnikoza) :3 c c? ( ), : /# (P grandis) ; #$ 3 : > # (P alba), >, = 3:; 3;, :3 =< : B3:,? : :, : : 7 : 7 ;, ; b 6-7 :, G1 7 : 1, ; [45] >: 7= ( 7) 7= ;:3 [3? 7:, 3, :, :, : U 7 : Fig 58 Scheme of Pulsatilla spp generative specimen (by I Parnikoza) %#$ ` 3; : :, 7 7 P :< :3 ;, < - 3 Z3 :3 : 3 J 1-2 : ; 94
7 2 < 7 3 (2-40,5-1 3), ; g 1 (2-3), : 1-2 : Im 3, 2-3 : = c =< :, <, : (: ; :, ), 0,7-1,2 3 ; : V1 : , 7 4, (4-71-1,5 3), ; ( : 2 3) : V1? : 3 3 (13-14) (23-24) 3, 5 (6), (7-91,5-2 3), 7, < ( 3 : 1,8-20,5 3) \ ; 5-7 T: : 3 7= G ( 6 ), : 7 = : :33? V7? 9-11 : G , (: : ) c (4) 5, 6-101,2-2 3 ( :?, 1,8-20,3-0,5 3) ; 5-7 G (58) 3, : (15) 3, 7 : 8-14, (: 2,5 3) c 6-7 (7-10 (12)2-2,5 3), 2,50,5 3 X : ; 6-7 :; 5-9, : S (2 (3-4) :), 3 : , 3-5 (4-70,8-1,4 3), ; 7-9 [= : [38] Fig 59 Scheme of Cephalanthera rubra ontogenesis [38] 0 ' (Himantoglossum caprinum) T3; P? : 3 4-5, J 2-3 : (1 :3 ), Im 2-3 : (3-4 ) : 201,5 3 V :; 3, 3 V 3 : 3 3 3, : : 2-3 G [45] 0 1) : 7 3? : 2[ j> P 3? : 2 ;3 : 3 ('/&"!/1$0/!89*0/) 2 : V, : : ; 2 : B 3 7, ; :, : G (T 60) Fig 60 Scheme of Ruscus colchicus ontogenesis (by I Parnikoza) 95
8 0 /1 : 7 : G 5-8, 3; J : G : P, :, : 3 J 3 1 ( : 20 3 ) [31] :,, : Im 3? 2-3, V 4-5 U : 3 : : : ;: 7 S : ; [33] X ; G Fig 61 Scheme of Fritillaria meleagris ontogenesis (by I Parnikoza) 0 (F ruthenica) > P 1 3: 2-3 : 1 =3, X 4 : ; 2-4,, : 7 b ;:, 10-15, 7 :; 3, :< 3 3;3 3 (, 3 : ; 7 3? 5-6 ) `: G :? : 7 ( : 7 : 7 ) X 3?=, 7? [45] 2+1 # P 0, :3 3 7 : 3 _ 3?= 1-3, :, ; (5-37 :) J ?= 3 3 2,5-9 3 c Im : , ( 9-16) (13-43 :) V , ( :, : 7 : ) G1 1 G 20-80, T ; :, : X 3 G G T3 3 ;, G1 G3 3? 1 G 62-86, `3 3 SS 1-2, = 6-14 ; S J-Im [36] Fig 62 Scheme of Polemonium coerulea ontogenesis [36], with modifications 96
9 2 11 : :3 = J 3? 1 Im 2-4 V 4-8 ; : [14] P 7 3 ; G : [, Xa 3 (-"" &!';! #*, </,/) [2] Fig 63 Scheme of Spiranthes spiralis ontogenesis [2] 3 %$) ( 3 :3 J (1)-2 5-5,52,5-3,5 3 ( (;), ; 3 (7 ), ; 7; (14) 3 (2-3 :) 3 :3 (\ ) : Im ( ), ; 6,5-7,54,5-5 3, < 7,5-94-4,5 3, ; 4-5; 2-3 : 3 :3 (\ ), : 3,5-5,0 3 V (40) 3 ( \ : 7 3), ( , \ 6,0-7,04,0 3), ; = ; 5-6 > G , G ,5-10,5 3 ; 7-8 (G1) 10 (G2); 5-20 : : 7 S? :; ;?; 3, 3 G (: 2 ) [38] \ 7,0-8,04,5 3 ) Fig 64 Scheme of Listera ovata ontogenesis (by I Parnikoza) 3 P ; : : :3 J ; : < 3-5 3, 3: 3? _ 3?=, 0,5-0,82-2,5 33, 3 3? Im : : < 3 : , : ,5 33 [:3 ;: 3? = [:? : V : j 3 : : X : 97
10 ?=, : , : 3 0, ? G : 1-1,5 33 : 3 ` G : B G2 (: ) 5-7 : : : : : 7 < 3 7 (45-60 ), < : 2 G 6,5-8 3 a : -3, > G3?: 7 [3 7< G = > SS : 7 7, 3?,? : 3 X < 2-3 : 3 3 ; S :,? Fig 65 Scheme of Thymus pallasianus ontogenesis [38] 3+ 4 P 3 1, : : : B ;:3 :?= 3 3 V, :?= : 7, 3 2, : X 6-7 :?: 7 b ;:; ; 3; : 3 73 [37] Fig 66 Scheme of Tulipa quercetorum ontogenesis (by I Parnikoza) : 3 :3,? 4 : 1, : ; J 1 3 ; Im 1 : ; V ; G [23] > : : : =? >, 3 3 Y, 5/ ( :, > :?, #, 98
11 6, #) : : G : J 3 0,3-0,5 3, : 5-7 3; Im 1,0-1, ; V 2,0-2, J : : 3; 8, Im : 15, V 20-25, G B 7 3; : = [16] 3 # 3 :< 1 ( ) 2 ( 3 ) : 7 [45] 78$ $ a : : 3 V ( ) Sp ( ) X : : : 3, 3 3, 3 `, 3 ; 3 3, 3 3? [18] ` 7 : ; 3, : : :? :3, :3 :? ; :? Sp 91 3; : : \ 11 (:) g 3 P 3?? ;::? : ; J 3? 2 : 3??, : : Im?? :;: 2 : 2-3 : > V ; 2-3 : : [: B < : 3 V, 3 G, 3; 2 V : 2-3 : G? 4-6 : B 3? 1 7 G1 > G2 2 7 : ( ;) :? :, 3? G3 S : 3 : : Fig 67 Scheme of Corydalis solida ontogenesis (by I Parnikoza) :, 1 8, 3, - : 33, a P : ; J Im := 3 =3 3 :3 ( 7, 3? ) V 3 1, : X :?= : 7; : 1 # \ :; 1 ;/ 9 ;/ 3 X «j3» :3 [16] P : ;; : 1-1,5 3, : 3 3 [, 3 P : ::= [16] J 3, : : 3 ;, 3? : ;:3 2 1,5-2 3, 1,5-2,5 3 :; : 1-2 : Im? [ 3 33 (: 2-3 3, 2-4 3) :;: 2 : 2-4 : V 3 G ;: : 2-4 3, : 2-4 : X :?= : 7 > G ;: 3 3 T 3?= Fig 68 Scheme of Corydalis marshalliana ontogenesis (by I Parnikoza) 99
12 B: : > G2 (2-3 :) 2-4 (8) 7, : G3 S :?? > 1 ; 3, :, 3? ;, 1 ;/ < B3 :,? 3; J: : ( : : 3 ), 1 : : V 3 7 : , ; :,, ;? ; 3 > G : 3, 3; 7 : 3= 3? : 7, 7, : : ( 3) Fig 69 Scheme of Cyclamen coum ontogenesis (by I Parnikoza) < ='%$ 3 : =: «\» \ (: 5 33 : 3) 3?, : a, 5 33, : : 3 3 :3 :3 7 3 : J :?: 1 (: 1 3) 3=3 2 3? 3 (: 2 3; : (@ :? 3; : Im) :, 3; V X 3; : G1 ( ), G (T 48) : 3 G2, : : 3?: : Fig 70 Scheme of Cyclamen kuznetsovii ontogenesis (by I Parnikoza) > $ [ 2 : : 3 3 ( :) (: :) 7 : 3 T 3 3 ; 2% 3 ; T 3 =? 79% ; 3, 47% P ; 1 3: (: :7 : 3 : 1,5-2 3) _? : 3; 2 : ; J 1-2 :3 1 : 3 3?= 3 3, : , 1-1,51,5-2 3 Im ?=,? 1,5, 3? V X Im, :?= 3?= 3 : V 1 ( < 2-3 3?=, : < G0, #$ ) G1 1 G 3?=? :?=, :?= : :? J G2, 2-4 (6) G [:?= 8-12 (16) G3 1 G 3, :?= 3, 2-4 S, = 1 J?= 3 3 =3 3? $' :?= U :? 33 J, 3; J,?= 100
13 , 3 3 3?=3?? [= :; ; 5-8 (10) [36] Fig 71 Scheme of Ficaria verna ontogenesis [36] 48 (Gladiolus palustris) T3; 3 33 Y 7 :? :? P 1 3 : : 10 3 V 5 : 2 3 ( G ;) : ; b ;: 2 G 3; 3; : 3 73 (:) [45] 4,, X: = 3 :?, 3 : ; J ; 1, T : V :? ; : 7 : 3-4 : ; ( 2) G 3; < : 7 S : ; [10] Fig 72 Scheme of initial ontogenesis of Gladiolus imbricatus [10] with (Dictamnus albus) T3; 33,? Y 7 B3? 3-4 : ( :) : ; T :; 3, ; 3; ; $ P =, 3? 3 B3:? : 7 \ 7 1 = J, 3 ;, 3 (3-5-7 ) ,?: Im ; 3; : : Im1 :, 3? :, (1-5), Im2 :, 3, [ ; ;, 3 ;, 3? 3: 3, 3:? :=? 2 $' 3 : : (: ) :3 3 V :, = 3 : 1,3 3 > 101
14 ; < : :, ; 3 < ; 3 3 = 3 c > V :,, 3 V : 3? <?, 3 = 3 : 1-1,5 3 : : 3, ;:? 3 G1 : <, 3 3 < : ;? B : G2 : : : <, 3 3 : :???? X, 3 :, = G3 ;,, 3 3 :?? [3? [ -< : 3-3?= 3 3 : <- :, ; 3 = 3 S 3, ; \, Y? :, 3 G3 [3?= ; 3; (J-V) : 3; 2 Fig 73 Scheme of Fraxinus excelcior ontogenesis ) J ,5-3 3 Im : : 7 : V (4-90,5-1,0 3) G ( : V 20 3) b :3 5-25, 6-10 T : ;:< V3 3 Fig 74 Scheme of O morio ontogenesis (by Loya V V) 102
15 > 8# 3 (4) ; P J 1 ; 7 < 1-2 ; 3, 8-1,20,3 3 (1-3 :) Im , ; 3 :; 1-2 : V 3-4 (5) :; 2-3(4) : G : G1 (1-2 (3) :) 5-6 (12-152,5-3,0 3), 7 ( ), G2 (5-7 (9) ) 5-6 (7) (2,8-3,214,0-17,0 3), 7 35,0-37,0 3, G3 (1-2 (3) :): , 3; : : 7 3? SS (1-2 (3) :) 3 ( ; 8-10 (12), V, : 14) c ;? S (1 :) ; J Im ( 3? - 3 :) :; ; (30) Fig 75 Scheme of O mascula ontogenesis [42], with (Orchis purpurea) > J 1, Im 2, G 4-6 : :?, 3 [23] : ; ; : :3 30% 2 3, : : 13?: 3 ( :, : 3: 3 )?: 1-2 ; 13 : : [56] c : : :?-, 3 3? 7 3? :?= : U : 3 : ;, 4 ; 3 1 =, 4-60,1-0,2 3, 3 ; 3 J 3? 1 ( 6-7 : 8-100,8-1, ; 3 ); :; : 1-2 :, :, 3 > Im ( 8-10 ) 2-3, : < (: ), < B: : V (:; 1-2 :) 4-5 G ( ) 5-6, : w3?= ; : 7< : 2 :: S 7 =; 3; =< 3? 3 [45] =3 : > : 3, :, :? 2 (, ;= 3 : = ); 3 3 3, :3 : 2 ) (O morio) : # (O ustulata) < 3; ; 2 :, 4-5 : : : ; 7? T 3 : 7??; ;? B 7? 7 ; 7, 3 :, 7, :? -3 :3 <, :? : 3, ; :3 3 ( :? 3: :3 3 3, 3;, :? 3 ), < 3 _? : : ( :3 7 7, 5-6 : : ; 3) `:?: 3 (, (O picta), 8 (O mascula)),= 3;: 3 :3, 3?=? 3?= [45] B: ; > :? J (1-2 = 3), Im (, ), V ( 3, ), (Sp1) 1-2, 3, (Sp2) :, 3, (Sp3) 1-2, 3 3, = ( Sp1), SS (? ), = :, S :?= =, 1-2 ( = ) a : = (;?= 3 =3 : 3 =) =, ;?= 3 : 3 : 3? ( :; : ) 103
16 Fig 76 Scheme of measuring herbaceous plants of different life forms (by I Parnikoza) A# 1 1 [: 3,?= b 73, :, : 3 : (:?= : «3») [ :, : ( 7, 3, 3 3 ) : 3 3 3? (50) 3 : 3 3 : : 7 3; ;, : 3 ; 2 =: 3;: ( : 3 3 :3) 3; :, -, , : 3, :? :? ( 3? «B» 33 Microsoft Excel «_ :», 7? «[», : ( ) : 95% :; ; 3;: ) 104 7, :3
17 3 :, < ; : b a 3 :, : 3 : 7 B' # < ` b :?= : 3 : 7 3 :, 3??, 3; 3, 3 3 = \_ : # % 3 $) (%+ )$ $/1 6$), $$ 1+ % B, 3 : 3, 7 3 3, 7 ; ; : : X 7 3, ;:, :? 7 7, 3;: 3 ; : =: ; ; 3::; (9"*"/! #*,0!</, &!#!! (&0!) #*,0!</, $</*0!&"; G!&!82 #/ )*&"!0 #*,0!<//; &'1(" ()&";, )"! &!#$ / 0' / &0* 0!9(" #*,!&/";&+ "#!0, / 1*< &'/ &*0!2!('+-//!1#!&"* /1!, E"!!,*)*", )"! 9!!!8F " / ") ?? : ; ; ; ; 5 : 1000 <= 100?, :? b : 7 =: :? =: ( 0,25 : ), : 3 : :, = :;? : ; 33 ; 3 3::; 7 : 3;3 : 3 ( ), 3; ;? : 3 : T 3; w:,?= 3 3? ; ) 7 : : ( : 3: ) ; 3: : 3 / ;: ; 3; 3, : 3 ( ) 3; - ( ;: ); (: ); 7 ;, 3 : ( :) 3 ` 7 : :, 3, :, 3? 3 3 :? 3 3::;? 33 / 3 3 [ : 3 7 3; )+ )/,, Xa :3 : = 7 3, : =? :, =?? : 3 3 = 7 3 : :3 3 (3 7 ) : 3 ; : /1!-*&& "*"!#! 7 7 : : : 7, : V : Y 3 3, 3?: : 7 3 : 3; : : : 3 >:3 3 3 : (33 3 ) 2 3 ( 3, : : ) :, 7 :; : :: : : ;: B3 3: : = : 3 3 ( 3 3), : 3 3, 3 :?= 2 : : 3; ; : =: 113 ( ; =: 3 -: : ( :3 : 3 = ), 105
18 3;: 3 - : (3; : :3, ) g, =: : a : 3, =: :? 3 3 (, 33 : ), :3 3 3 V 3 : 7? : : 3 T, 3 7,,, : : 33 7 : : 7 (#*&)'/H * I#*90"$) 7, 3 37 ; : ::7 a 7 :;? :, ;: 3-6 (7-8),, 3, :, : =:, 3 = (:? 3? :), :? B : S? Z3? b 3 3,? ::7? 3, 3, b 3 (, ), : : 3::; [33, 46] U ;? : 3:7 ; 3 : 3 B' $ $$ % $%$$ ( E8 1 ) ;:7) 7? : 3 :3 7= 3, ; : :; 7 7? 3 : =? \3, \ \? B :3 3 2; : : (2[ j>) : w \: \ : : B 7 Y ; =: : : 77 :, :;, :, 3 7 : :? =: S=13 2, : : 3: X 3:? : :3, 7, ; : 3 a;: :,?,, 3? 33 U : 3 :: 3 3, 3 :; : 3 :; : : : \3 \, 3,?, ;, :; 3 3 7, : 3 3 : , :; :, 7 3 \7 j 0)% 1' ))8 % $%$$ )#1 )1 : : : : : 3 3, 3; :, :? \3, : :7 3; w 7, 7 = : 3 3, :, ; : : 7 :? -3 : 3 ; 3 :, 3? (: : ),? 3 3 ( : 3) X3 : 3 : 7 : 3, : :, : ( : 7 ) F? T3;? 33, : 3 3 = B3? b? 2 : : :,, [3] 5%$ 3; 73 -:3 33 B3? (?) ;?? :? c 7 ;? : 3 : 8 3 (:? :?=, :) 5)/ $ :,, 106 ; b
19 3 \? 7? B3 3? 1 3 (?, : ;?? ); : :?= : : T - 3 [37] : : :%$ :7 : # $; : 7-3 Y :: 3; 3 3; ( :?:) :??, ;:? 3,? = 5-8 [: ;? : : X: : :? B3 : :, : ( 3 :?=3 : [37]) , 3 3 ; :?? :,? 3? : 3: - T: = ;??, ; B3 3; 3@ G, = : 3; 3=? ; ;:, ; =3 : ; 3 [3] -?, = =3 3 7 : ( ) = :; 7 :, : : : c 3;? : 3 : =? : : 7 : : : ; : ,2-0,3% 3 c =? c ; 37 7, 3;, : 33 3? : 3 ;?, :? 3 3 \ =? 3,? 3 ( 7 ) \ = :; : 3 T : , : : , : T3: c3 ;? : ;? : 3 3 =? B3 : 3 =) (Melittis sarmatica) 3; 33 ( : : ), : :?=, 7 : ; : [3] = ( 3 ) 3; 33 (?, 3? :? 7 ) B? :? : b :, : [45] = (Staphylea pinnata) ; < =< :; J, 3, ; : 3 7, 3: B ; [45] =$ B3?? : 3;: 3 : (:; 100%) : 50% ; : : 3;, $ H# $ 3 =? 3 1:1 B: 3, $ $ : :: ( ), =$ )$ :? (, 3 ), $ :66 : \ B `, $ $ 3;?3 :3 3 3 V 6-7 : 3;?? (?: 3 ` e) 2 : 3: ; : (?, ; 3 3) B3 :; 3??, ='% 3; 3; 33 c? :3,?= = 33, ;, 3 3 T : [3] ; : 12 3 ; : T3;? 3 = : : : :;: ::??, ;?, : 4 3 ( : 3 3? : 1:1) c :? , :? :, : 3 3,? 3 :3, 3=? :;:,? 3,?, ::? 3 H 7?-?, :? - ; : 3 (3 ) : 3 = j : 3 1-1,5 3 (7 ),3 : 7, : :7, 3 :, :: : 3 ; 3;?, 107
20 ;)%??, ;? T3;? : 3 = 3 3 : 3, : 3 : 1) > : 3;? \;: : 3, 3 ( 3 ); 3- :<3 : : ( : ;: 3) U : B 3; «'% $# $#$# '8 1 1)»: (3?) G V?, 3?? 3 :? 3:?, 3 < > : : :, 3 3;, 3 ;3 ; 2 [:< 3:? 3 3 ;? : : B 3 :33 3 ;? :,? ( ; 5-6 3)? ;: 3, (20-25 : /$) : 3? X 3 ;: ( : 3)? 1-2 ( /$ : 3) : 3: ( :?, 3 ;? ) a 3: 3, ;? =< : : 4 7 (2-10 ) : 3, 3 3, 3 3;, 3 3 : %$) 3; 3; : 3 = ( ) [45] : : $%$, 3 3 3, :, ;, : ;, 3 : c ; 3; ( ) 7 3, :; 3 :;:, : : ; ; : 3 =,, ;:3 = 1-2?= 33 3;?, : ; ;?, = \? 3 3, 3 : 33 3= B? 3, 3? : `? -, : : V: 3? ; 1 3 % #) T3; 33 T, =,?, = 3 ; 3, : 3 Y: 7 3,? 3 3; 3;, 3 ; 3 33 [3] 3, ; b -3 c 3; 33, B3 (?-) ":", 3;: ":3 " ; : : 3 :3 3, ;:? :? : 7 :; : :? 3, ; 1,5-2 3, ; 3 : =?, 3 : = ( :: : 3 3 :3 = ; : :; : 3 :? ) : ()) 7 : 3 \3 3; )8, 3; :3 B: , : :?,? 3 7 : ; ; ; :) i 7,?, 3 : 3 3;? ;3 33, 73 -:3 j : 7-8 3, 7 3 : / 7 : 3, 3 3, ; :3 37 j, 3 3, :;= 3 [3] #$, 3, 3, 3 3 [ : :? 3 3 3,? 3, :?,? ; 3; : 3; : 3 "" ( 3;: 3 : ) B3? 7,? : ::7, 7 :, ;?? 3, 3??, (`, ) :3 7 3 :,? 3? ( ;,?= ) B3? ; [3] 108
21 0, 3 3,, ; /1 ; T3;? 33 :? 7 3?? :?= ; 7? 5-6 : a 2 3; : 1) : 7 : : 3 : 7 7, : 3 3? : 7; 2), :,? :?, 7 :? :7, ;? [37] c 7 +$ : : 3 25ºB ( 3 : 7 ) 7 ;? ,? :3? 7 3, 3 3 T3;? :3 (? : 3) T? # : : :,, 3 : : :, 3 : 3 : 7 3 B3? 3 3 ;,,? 3, ; + )$# 91 = 3 (; :? 7= ), ;? : 3 : (, 1 + ; :: :,, = 3 : 3 ) > %1' )$ 7 3? 3 [:, 7 :; 3 3;, ;?: 3 B `,, 3;? ( =3 ); 7? (: :, w: : 3 = 3 =3) 3; 3 3, : : >/ 7 3; = 3 ;? :??,?, 3; 3 : :? 7? 46 (),?? 3 T3;? :3, : B3? b : \ 7 ;? ; : 3; 3; ? = ; : = d=? 3 : 3= 3 : 2-4 C = :? 7, 3? <; ;?,? X 2, : 3 :? ( <,, : ), 2-3 : 3; ; Y 3 3 3; a=< 3; : (?-) < 3 33 \ ;?, 2-3 3;?,?, 2-3 : 3? [ 3: : 3: B j, j ƒ:7 :? > [45] 109
22 2 (3 ) 2;,?:3 :, ; 3 : : 3 :, 7 : : ;,?: :, :3?? 3 ; : V 7 : : 100% d 3 : : d 3 ; ; : 3 : : 3 : : B:3 : :! 10, : 7 V ; :3 :33 7? X 7 7 ; Y, 3; _ 7 : :, = : : - 7 > 3 : :7 3: :, 3; 3 3:3 3 3, : 3, :? : : 3 3 : Y, :, 7, 3;, ;? :, 3 :7 :, 7: : 7 : : : :, =? 7 ; : 7 3, 7 ; ; : 3? :? : = g ; 3? 7 ;?:, :; 7 ;, :, = : 7 3 3? _ : 7 7 ; :3 ; 7-? : : : : Y, = : :;, ; 3, 7 ; 3 [3? 3?, =, : 3? 3, :;? 3 : 7? 2 : 3 33,?? 3: : : 2 : , 3, = 3 : 3 7, 3? : :? : :, = : «= 3 3 :3» 3 : 3 3 B 3 :3, 3 110
23 c 1 Bednorz L Population dynamics of Liparis loeselii (L) L C Rich in the nature reserve Mielno some results from a 8 year study // Electronic journal of Polich Agricultural Universities, Biology , Z 2 2 Loya VV, Gaponenko MB Features of population biology of Spiranthes spiralis Chevall in Transcarpathia// [-'$ VII 0<1(*#!1!2!I#-// "]%#** / (';"//#!*/!#%/12" / 4 0<1(*#!1!9! &!F*/+! 1/*0/!('+-/2!#%/1$% (_#;, `!&&/+, 5-10 /H+ 2007) c&"/ _#&!9! 9!&(1*#&"!9! (/#&/""* Z 8 (36), d#/+ "e/!'!9/+ / E!'!9/+", $(& & _ ` : (#1!') g! &"#*/-*0 h#*&!2 /9/: `*&"/+ / e' dj; & 4 _: Y c, _ j k'!#/&"/)l,*%l1 / * `lf/l //m # 8!" <(#*', 1986 _ 43 Z4 d _: Y c d/&"0* *"9!#l2 #/#!1!-,*!l1!9! I!1( m #*n/ "* /"*+ nn!"/0l,*-ln h: kl"!&!-l!-"#, & 6 c ]"!9, "*!('+-l2* &"#( "(#* &!l o/#!!'/&"!9! "* )!#lh)!9!!&/&"0*% h*l&;!9! #/#!1!9!,*!l1/ *// p* &#** m #*nl 1997 _3 Z 2 d q/'// q: r9#!#!0/,1*", & 8 T, j Y _, \ Y ]"!0!#I!9,!"!#$% #1&"*/"'2 #!1* Paeonia L // c&"/ 0!&!&!9! (/#&/""* e!"*/ * 1976 Z2, d I'!#* [!&!&!2!8'*&"/ c$ 14 g!1 #1 c s g*'!* [, t,1-! «v#/i / h», & 10 I'!#* [!&!&!2!8'*&"/ c$ 15 g!1 #1 c s g*'!* [, t,1-! «v#/i / h», & 11 : T e/!0!#i!'!9/)& /!&!8!&"/ *"#** "*"*#&!9! (Crambe tataria Sebeok) #/)!2 (';"(# / III, n,1 m #*n&;!9! 8!"*l)!9! "!*#/&"* (",/ 1!!l12) h, s*(!* 1(0 *, 1965 c k'!#* [/%*2'l&;!9! &!&!!9! 'l&( * z# *F/l // cl&/ h/n&;!9! ml#&/""( {l0-8l!' *( / "* *( / #! p0'h 1991 c/ 1 & j Ž Goodyera repens (L) R Br ( g!'l&;!0( 1#<*!0(,*!l1/ ( // m # 8!" <(#*', 1989 _ 46 Z 6 & j : ]#%/1/ *o2 &"#*$ [: s*( *, & 15 j: X [ /""}* I!#0* /1( Campanula serrata (Kit) Hendrych l1& -ln Heterophylla (Nym) Fed, m #*n&; /% h*#*"// v!#/ l 'H1/ ((!" &"l &"*'!9! #!,/" () //[-'/ [l<*#!1!n!i#-ln <!" # " `*%l 2002 & j X, \ h*"*'!9 #1 /% / /&),*HF/% #*&"/2 9!#!9! h#$0* '"*: vsed, 1971 d j j c, 4 a c, 4 B _ g#!-" // ]/ (<1*H"&+ *o2!0!f/ {*#;!: jhv «g)9/», & 18 j `, B3 _ ]&!/ Il"!-!'!9ln h: kl"!&!-l!-"#, & 19 2 / 'H)/!,#*&"$% &!&"!+/2 '&$% #*&"/2: EI0#!/1$ (8/!'!9/+) ["!1/)& / #*,#*8!" / [: _/!9#*I/+ [vgt, & 20 g ;, \ [ [, 4-B e T d"* l #& "//!%!#!/ -!!('+-l2 Crambe tataria Sebeok * ]l''l (m`d`) // m # 8!" <(#*', 1990, " 47 Z 6 & g #*&"/2 / g!1 #1 * *10/ * rs ddd` r q _*%"*1<+* _ 4, & 22 V g#! &"#( "(#( -!!('+-l2!#%l1/% m #*n&; /% h*#*" // el!-!,/ h*#*"&;!9! /&!!9l# +:!"/0l,*-l+ l!%!#!* cl&/ q;l&;!9! (l#&/""*, / 17, 1987 & \: #/#!1$2,*!1/ q"!/&; #/#!1$ _!0 {{ !1 d/0i#!!';, d]sr_, \ _ g#!-"$ //["!1/)&!!&!8/ 1"& /2 "'!00(/ *-/!$2 #! " «j!'!9/)&! &!1#(<&"!» [, & 25 \3 V,, Y, _ s!"!#$!&!8!&"/ /1//1(*';!9! #*,/"/+ /1! #!1* Stipa ex situ //g#!8'0/,8#<+, l1!'+ "*,8*9*)+ 8l!#l,!0*l"!&"l (0!*% *"#!!9!-,0l!9! !/F*: [-'/ 0l<*#!1!n *(!!n!i#-ln (h#//2 `l9, "#* #) h#//2 `l9, 2005 d \? _ c!,12&"/ # #*-// * </(H #/#!1( s*-/!*';$2 E!'!9/)& /2 -"# m #*/$, & 27 \ 7 ` j ]"!9, / &"#( "(#*!('+-/2 &!#!I/"!!"!#$% /1! #!1* Borychium Sw!1,!*% H<!2 "*29/ /!1"*29/ #!2&!2 `!&&//: r"!#i 1/& *1 8/!' *( e*#*(', & 28 \,, \3: ` e/!e!'!9/+ #1 /% /1! #*&"/2 (* #/0# EI0#!/1! h*#*") q;!: d/", & 29 \, -\ j, B: ƒ, 43 X I0#!n1/ ( #*n&; /% *#*": 8l!0!#I!'!9l)l!&!8'/!&"l,!%!#!* l #& "// /!#/&"*+ // m # 8!" <(#*', 1987 _ 44 Z 2 d \ a X r("e!'!9/)& /!&!8!&"/ ##!1( "/!9! (&/'/+!#%/1$% v!#!9! h#$0* 1/& *1 8/!' *( d/0i#!!';, 2002 * #**% #(!/&/ 31 c, c ƒ s! 0l&-,*%!1<+ Fritillaria meleagris L * /"!0/#F/l // m # 8!" <(#*', 1990 _ 47 Z 3 32 c ` t"#!1( -/+ #1 /% #*&"/2 *-/!*';!9! *# * «g#/+"& /2» "#*';!0 8!"*/)&!0 &*1( srs e'*#(&/ // e/!'!9/)&! #*,!!8#*,/ *-l!*';!9! *# * «g#/+"& /2» / 1#(9/%!&!8!!%#*+0$% #/#!1$% "##/"!#/2: &8!#/ *()$% "#(1! *-/!*';!9! #/#!1!9! *# * «g#/+"& /2» _(#! [!,$#;: «e'$2 "#», 1999 & ` `1 / /1$ #*/$% '&! m #*/$ h: k/"!&!-/!-"#, & 34 ƒ, j =, 3!!('+-ln Paeonia tenuifolia L (Paeoniaceae) &"!/% (';"(#!-!,*% // "#!1( -l+ #!&'/ 2003 Z1-2, d ƒ, ƒ v!#/-l" &+/2 (Adonis vernalis L) m #*nl h:, kl"!&!-l!-"#, & 36 [ *"'*& ' *#&"$% #*&"/2 m)8!!&!8/ ˆ!o *#-]'*, [*#vm, & 37 [ *"'*& ' *#&"$% #*&"/2 m)8!!&!8/ _!0 II ˆ!o *#-]'*, [*#vm, & 38 [ *"'*& ' *#&"$% #*&"/2 s*()! /,1*/ _!0 IV ˆ!o *#-]'*, [*#vm, & 39 [: $&o/% #*&"/2 m #*/$ h: k/"!&!-/!-"#, & 40 _ [*"#/*'$ &"*-/!*#$% *8'H1/2,* #*,/"/0 9!#/-"* &9! Adonis vernalis L // eh' []tg ]"1 8/!'!9// 1966 _ 71, Z2, d _ e!';o!2 </,$2 -/ ' 9!#/-"* &9! // `*&"/"';$ #&(#&$ 1975 _ 11, Z4, d a _ ]#%/1$ d#!-p**1!9! h* *,* [: s*( *, & 43 : _ ["!1/ *!9!'!o+,* *,/ l, *0 +"! #/#!1/ "*,*!l1/% (#!)/F h: kl"!&!-l!-"#, & 44 B g!1&</ & '*1)*"$2 d/0i#!!';: j!'!9!- (';"(#$2 -"# «h#$0& *+ //-/*"/*», & 45 B j, j "#!1( -l+ #l1 l&/% l,/ *H)/% #!&'/ I'!#/ m #*n/ - h: s*(!* 1(0 *, & 111
24 46 B /!&&"*!'/ 8/!#*,!!8#*,/+ h!'' *"!#! [: t,1*"';&"! s*()!9! / ()8!-0"!1/)&!9! -"#*, & 47 B7 g!'!<+ #!!#+1!!9!'!o+,* *,/ l, *0 +"! #/#!1/ "*,*!l1/% (#!)/F h: h/n&; /2!'!9!- (';"(#/2 -"#, & 48 B j ]#%l1n m #*n/ h/n: s*(!* 1(0 *, 1989 d B j d"</*0/ z#!!n /9/ h: m#!<*2, & 50 B \ _ t"#!1( -/+ #1 /% / /&),*HF/% #*&"/2 8!"*/)& /% &*1*% *!,0!<$2 ("; /% &!%#*/+ // ]%#** #*&"/"';!9! 0/#* d/8/#/ s!!&/8/#& : s*( *, i I'!#$ m #*/$ h: s*(!* 1(0 *, & 52 b j[ `9l!*';l '*1o*I"l (#/#!1l) *# / #!l "* m #*nl // p*!l1* &#** m #*nl 2003, _ 8 c/ 3 d , /9* m #*n/ `!&'//2 &l" h: m #*n&; * -/ '!1l+ l0 [ge*<**, & 54, ` `1 / / /&),*HF/ #*&"/+ m #*/$ h: s*(!* 1(0 *, & 55, ƒ h!& " I'!#/ d#1;!9! g!1l#! + d(1/l #!&'// h: kl"!&!-l!-"#, & 56 4 j, c `,(';"*"$ 0!/"!#/9* -!!('+-/2 Orchis purpurea Huds h*#*1*9&!0,*!1/ (h#$0) // eh' v' 8!"* &*1*, 2000, c$ 179 d#/+ ]%#** #*&"/"';!9! 0/#* & :, 4: a j &1/-/+ «g#!-"$ p*!#!<;+» // r"'*& &#*!)/ 1'+ E!'!9/)& /%!00#)& /%!#9*/,*-/2 p*!#!<; & 112
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