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首页> 外文期刊>Canadian Journal of Forest Research >Genetic selection for cold hardiness in coastal Douglas-fir seedlings andsaplings
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Genetic selection for cold hardiness in coastal Douglas-fir seedlings andsaplings

机译:沿海道格拉斯冷杉幼苗和幼树抗寒性的遗传选择

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Genetic control of cold hardiness in two-year-old seedlings was compared with that in 7-year-old saplings of 40 open-pollinated families in each of two breeding populations (Coast and Cascade) of coastal Douglas-fir (Pseudotsuga menziesii var. menziesii (Mirb.) Franco) from western Oregon. In addition, the efficacy of bud phenology traits as predictors of cold hardiness at the two stages was explored. Fall and spring cold hardiness were assessed using artificial freeze testing. Similar genetic control of cold hardiness in seedlings and saplings is suggested by strong type-B genetic correlations (r(B)) between the two ages for fall and spring cold injury traits (r(B) greater than or equal to 0.78) and by similar trends in individual tree heritability estimates (h(i)(2)), e.g., h(i)(2) was greater in spring ((h) over bar (2)(i) = 0.73) than in fall ((h) over bar (2)(i) 0.36) and greater in the Coast population ((h) over bar (2)(i) = 0.69) than in the Cascade population ((h) over bar (2)(i) = 0.40) at both ages. Strong responses to direct selection are expected for spring cold hardiness at both ages and for fall cold hardiness in seedlings, even under mild selection intensities. Similar heritabilities in seedlings and saplings, and strong genetic correlations between ages for cold-hardiness traits, ensure that selection at one age will produce similar gains at the other age. Type-A genetic correlations (r(A)) between fall and spring cold hardiness were near zero in the Cascade population (r(A) = 0.08 and -0.14 at ages 2 and 7, respectively) but were moderate and negative in the Coast population (r(A) = -0.54 and -0.36, respectively). Bud-burst timing appears to be a suitable surrogate to artificial freeze testing for assessing spring cold hardiness in both seedlings and saplings, as is bud set timing for assessing fall cold hardiness in seedlings, but bud set timing is a poor predictor of fall cold hardiness in saplings.
机译:在沿海道格拉斯冷杉(Pseudotsuga menziesii var。)的两个繁殖种群(海岸和喀斯喀特)中,将两岁幼树的耐寒性遗传控制与40个开放授粉科的七岁幼树的遗传控制进行了比较。来自俄勒冈州西部的menziesii(Mirb。)Franco)。此外,还探讨了芽物候性状在两个阶段中预测抗寒性的功效。使用人工冷冻测试评估了秋季和春季的耐寒性。两个年龄之间的秋季和春季冷伤害性状(r(B)大于或等于0.78)之间的强B型遗传相关性(r(B))和单个树遗传力估计值(h(i)(2))的相似趋势,例如,春季((h)超过柱(2)(i)= 0.73)的h(i)(2)大于秋季(( h)在(2)(i)栏上(0.36),并且沿海人口((h)在(2)(i)栏上= 0.69)大于Cascade人口((h)在(2)(i)栏上) = 0.40)。即使在中等强度的选择强度下,对于两个年龄的春季抗寒性和幼苗的秋季抗寒性,也都有望对直接选择产生强烈的反应。幼苗和幼树的相似遗传力,以及各个年龄之间抗寒性的强遗传相关性,可确保一个年龄的选择会在另一个年龄产生类似的收益。级联种群的秋季和春季抗寒性之间的A型遗传相关性(r(A))接近零(在2岁和7岁时r(A)分别为0.08和-0.14),而在沿海地区则为中度和阴性人口(r(A)分别为-0.54和-0.36)。芽萌发时机似乎是人工冷冻测试的合适替代品,用于评估幼苗和幼树的春季抗寒性,芽定时机用于评估幼苗的秋季抗寒性,但是芽定时机不能很好地预测秋天抗寒性在树苗中。

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